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首页> 外文期刊>International journal of applied mechanics >Multi-Period Generation Expansion Planning for Sustainable Power Systems to Maximize the Utilization of Renewable Energy Sources
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Multi-Period Generation Expansion Planning for Sustainable Power Systems to Maximize the Utilization of Renewable Energy Sources

机译:可持续电力系统的多时期一代扩展规划,以最大限度地利用可再生能源

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摘要

The increasing penetration of renewable energy brings great challenges to the planning and operation of power systems. To deal with the fluctuation of renewable energy, the main focus of current research is on incorporating the detailed operation constraints into generation expansion planning (GEP) models. In most studies, the traditional objective function of GEP is to minimize the total cost (including the investment and operation cost). However, in power systems with high penetration of renewable energy, more attention has been paid to increasing the utilization of renewable energy and reducing the renewable energy curtailment. Different from the traditional objective function, this paper proposes a new objective function to maximize the accommodation of renewable energy during the planning horizon, taking into account short-term operation constraints and uncertainties from load and renewable energy sources. A power grid of one province in China is modified as a case study to verify the rationality and effectiveness of the proposed model. Numerical results show that the proposed GEP model could install more renewable power plants and improve the accommodation of renewable energy compared to the traditional GEP model.
机译:可再生能源的普遍渗透带来了电力系统的规划和运营的巨大挑战。为了处理可再生能源的波动,目前研究的主要重点是将详细的运作限制纳入了发电扩展规划(GEP)模型。在大多数研究中,GEP的传统目标函数是最大限度地减少总成本(包括投资和运营成本)。然而,在具有可再生能源的高渗透的电力系统中,已经获得更多关注来增加可再生能源的利用率,并减少可再生能源缩减。与传统的客观职能不同,本文提出了一种新的目标函数,以最大限度地在规划地平线期间最大化可再生能源的住宿,考虑到负荷和可再生能源的短期运行限制和不确定性。中国一个省的电网被修改为核算拟议模型的合理性和有效性的案例研究。数值结果表明,与传统的GEP模型相比,拟议的GEP模型可以安装更多可再生能源电厂,提高可再生能源的住宿。

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